Biomedical Applications Of Polymeric Materials And Composites


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Biomedical Applications of Polymeric Materials and Composites


Biomedical Applications of Polymeric Materials and Composites

Author: Raju Francis

language: en

Publisher: John Wiley & Sons

Release Date: 2016-09-30


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With its content taken from only the very latest results, this is an extensive summary of the various polymeric materials used for biomedical applications. Following an introduction listing various functional polymers, including conductive, biocompatible and conjugated polymers, the book goes on to discuss different synthetic polymers that can be used, for example, as hydrogels, biochemical sensors, functional surfaces, and natural degradable materials. Throughout, the focus is on applications, with worked examples for training purposes as well as case studies included. The whole is rounded off with a look at future trends.

Assessment of Polymeric Materials for Biomedical Applications


Assessment of Polymeric Materials for Biomedical Applications

Author: Vijay Chaudhary

language: en

Publisher: CRC Press

Release Date: 2023-08-31


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This book initiates with an introduction to polymeric materials, followed by various classifications and properties of polymeric implant material including various development methods of polymeric materials and their characterization techniques. An overview of various toxicology assessments of polymeric materials and polymeric materials for drug delivery system is also included. Design and analysis of polymeric materials-based components using Ansys software along with polymeric materials for additively manufactured artificial organs are also discussed. Features: Addresses assessment of polymeric materials in biomedical sciences, including classification, properties, and development of polymeric implants Covers various topics in the field of tissue regeneration Discusses biocompatibility, toxicity, and biodegradation of polymeric materials Explores wide-scale characterization to study the effect of inclusion size on the mechanical properties of polymeric materials Reviews limitations and future directions on polymeric material with emphasis on biocompatibility This book is aimed at graduate students and researchers in biomaterials, biomedical engineering, composites, and polymers.

Fiber and Ceramic Filler-Based Polymer Composites for Biomedical Engineering


Fiber and Ceramic Filler-Based Polymer Composites for Biomedical Engineering

Author: Jyotishkumar Parameswaranpillai

language: en

Publisher: Springer Nature

Release Date: 2024-08-10


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This book presents the latest development of fibre/ceramic-polymer composites for biocompatible applications, with a special emphasis on the effect of different types of fibre and ceramic fillers on the characteristics of the composites. The book contains chapters that cover fundamentals, materials used for composites, fabrication, classification, and biomedical applications. The first section of the book provides a brief overview of the fibre and ceramic-based composite materials while the subsequent sections cover the numerous types of fibre and ceramic polymeric composites with emphasis on their potential biomedical applications. Increasingly sophisticated biomedical technologies, such as tissue engineering and regenerative medicine, as well as genetic therapies and controlled drug delivery, are being developed at a breakneck pace, necessitating the development of new materials to meet the specific requirements of these fields. Single-component ceramic or polymer materials that are now available do not meet their requirements. Therefore, composites and hybrid composites have an important role to play. Aside from that, to completely meet the fundamental criteria such as biocompatibility, biodegradability, and acceptable mechanical qualities, it is necessary to find materials that can perform a variety of advanced activities at the same time. This book is a road map not only for the materials scientist but also for researchers, academics, technologists, and students working in composites for biomedical engineering applications.